Physics · Professor Newton

Every card in Waves, light and sound

The whole deck, in order — so you can read it through before your child ever sees it.

1 KS3-PHYS-WAV-0001

A water wave has a frequency of 5 Hz and a wavelength of 3 m. What is its speed in metres per second?

15

HintFive whole waves sweep past you every second, and each one is three metres long.

WhyWave speed = frequency × wavelength, so 5 × 3 = 15 m/s. Picture five waves passing every second, each three metres long: 15 metres of wave goes by each second. The same relationship holds for sound and for light, which is why a low note and a high note from the same instrument still reach you together.

2 KS3-PHYS-WAV-0002

What is the technical name for a wave, such as sound, in which the particles vibrate along the same direction the wave travels?

Longitudinal

HintThe opposite of transverse: picture a slinky pushed and pulled from one end.

WhySound travels as particles squash together and spread apart along the line the wave moves, making compressions and rarefactions. A ripple on a pond is transverse instead: the water bobs up and down while the wave itself moves sideways across the surface.

3 KS3-PHYS-WAV-0003

What happens to the pitch of a note when its frequency increases?

It gets higher

HintTighten a guitar string and listen to what the note does.

WhyFrequency counts vibrations per second in hertz, and our ears report that as pitch. A young person hears roughly 20 Hz up to 20 000 Hz, and the top of that range falls away with age.

4 KS3-PHYS-WAV-0004

The property of a sound wave that decides how loud the sound is

The amplitude

HintThe size of each vibration — how far the air is shifted every time.

WhyA bigger vibration moves more air, so more energy arrives at your ear. Loudness itself is reported in decibels, and anything above about 85 dB damages hearing if you stay in it.

5 KS3-PHYS-WAV-0005

A sonar pulse from a ship returns 0.4 s after it is sent. Sound travels at 1500 m/s in sea water. How deep is the sea bed below the ship?

300 metres

HintThe pulse makes the journey twice, so do not forget to halve what you work out.

WhyDistance = speed × time gives 1500 × 0.4 = 600 m, but that is the there-and-back trip, so the sea bed is 300 m down. Sound is the right tool because water carries it for kilometres, while light is absorbed within a few tens of metres. An echo off a cliff is timed in exactly the same way.

6 KS3-PHYS-WAV-0006

The part of the ear that vibrates first when a sound arrives

The eardrum

HintA tight skin stretched across the inner end of the canal.

WhyAir vibrations shake it, three tiny bones magnify the movement, and the cochlea turns that into nerve signals. Loud noise destroys the delicate hair cells inside, and that damage never heals.

7 KS3-PHYS-WAV-0007

In a pinhole camera, why does the image on the screen appear upside down?

Rays travel straight through the hole, so light from the top lands at the bottom

HintFollow one ray leaving the object's head, then another leaving its feet, and see where each finishes.

WhyBecause light cannot bend round the edge of the pinhole, a ray leaving the top of the object can only reach the lower part of the screen, and one leaving the bottom can only reach the upper part. The image is therefore inverted, and swapped left to right as well. Your eye forms its picture the same way, and your brain turns it the right way up.

8 KS3-PHYS-WAV-0008

The angle of incidence equals the angle of ____.

reflection

HintA ray leaving a mirror tilts by as much as the one arriving did.

WhyBoth angles are measured from the normal — the line drawn at right angles to the mirror — not from the mirror surface itself. A snooker ball off a cushion obeys the same rule.

9 KS3-PHYS-WAV-0009

A straw looks bent in water because light ____ as it crosses the surface, so its path ____, while your brain assumes the rays came to you in a ____ line.

Changes speed, bends, straight — refraction at the surface fools the brain

HintFollow one ray from air into water and ask what the water does to it.

WhyLight slows on entering water or glass and speeds up again on leaving, and that is what bends its path. Your brain still assumes the rays came straight to you, so it draws the straw in the wrong place.

10 KS3-PHYS-WAV-0010

What is produced when white light passes through a glass prism?

A spectrum of colours

HintThe same band you see arching over a rainy sky.

WhyWhite light is a mixture, and glass bends each part of it by a slightly different amount, fanning them out from red through to violet. Raindrops do exactly the same job in the sky.

11 KS3-PHYS-WAV-0011

What happens to green light when it strikes a red jumper?

It is absorbed

HintThe jumper only sends back its own colour; the rest goes no further.

WhyA coloured surface reflects its own colour and soaks up the others, so a red jumper under pure green light looks black. A filter works the same way, letting one colour through and blocking the rest.

12 KS3-PHYS-WAV-0012

Roughly how fast does sound travel through air?

About 340 metres per second

HintCount the gap between a lightning flash and the thunder that follows it.

WhySound is around a million times slower than light. Timing an echo lets you measure a distance you cannot reach — but the sound makes the journey twice, so halve your answer.

Keep what you learn

Here, nothing is saved. In your child’s own sky every card is scheduled — it comes back just before they’d forget it — and the professor who wrote it is one tap away.